This application claims priority to Taiwan Application Serial Number 96148492, filed Dec. 18, 2007, which is herein incorporated by reference.
This invention relates to a current mirror circuit, and more particularly, to an accurately matched current mirror circuit.
In order to solve the current mismatch issue, circuits shown in
Therefore, an aspect of the present invention is to provide a current mirror circuit in which a P type transistor is included in the output current path to achieve better resistance to the hot carrier effect.
Another objective of the present invention is to provide a current mirror circuit in which a bulk and the source of the P type transistor are connected together to achieve better resistance to the hot carrier effect.
Still another objective of the present invention is to provide a current mirror circuit in which an operational amplifier is included to achieve current match between the input and output path.
In order to achieve the aforementioned aspects, the present invention provides a current mirror circuit generating an output current flowing through an output current path according to an input current flowing through an input current path. The current mirror circuit comprises a P type transistor, an operational amplifier, and a basic circuit. The P type transistor is located in the output current path. The operational amplifier has a negative input coupled to a node receiving the input current, a positive input coupled to a drain of the P type transistor, and an output coupled to a gate of the P type transistor. The basic circuit comprises a first transistor and a second transistor. The first transistor is located in the input current path and the first transistor has a gate and a drain coupled together. The second transistor is located in the output current path and the second transistor has a gate coupled to the gate of the first transistor.
According to the embodiment of the present invention, the aspect ratios of the first transistor and the second transistor are substantially the same. The source and a bulk of the P type transistor are coupled together.
To achieve the aforementioned aspects, the present invention provides another current mirror circuit generating an output current flowing through an output current path according to an input current flowing through an input current path. The current mirror circuit comprises a first transistor, an operational amplifier, a basic circuit, and an auxiliary circuit. The first transistor is located in the output current path. The operational amplifier has a negative input coupled to a node receiving the input current, a positive input coupled to a drain of the first transistor, and an output coupled to a gate of the first transistor. The basic circuit comprises a second transistor and a third transistor. The second transistor is located in the input current path and the second transistor has a gate and a drain coupled together. The third transistor is located in the output current path and the third transistor has a gate coupled to the gate of the second transistor. The auxiliary circuit is located in at least one of the input and output current path for improving a performance of the current mirror.
According to the embodiment of the present invention, the auxiliary circuit comprises at least a fourth transistor in the input current path and at least a fifth transistor in the output current path. The second, third, fourth and fifth transistors are coupled to constitute a cascode structure. The fourth transistor has a gate and a drain coupled together, and the fifth transistor has a gate coupled to the gate of the fourth transistor. The aspect ratios of the second transistor and the third transistor are substantially the same. The source and a bulk of the first transistor are coupled together. The first transistor is a P type transistor.
The foregoing aspects and many of the attendant advantages of this invention will become more readily appreciated as the same becomes better understood by reference to the following detailed description, when taken in conjunction with the accompanying drawings, wherein:
In order to make the illustration of the present invention more explicit and complete, the following description is stated with reference to
Since the input ends of the operational amplifier 502 are virtually connected, the voltages at the nodes V1 and V2 are the same. Thus, the current IM2 flowing through the transistor M2 is equal to the current IM1 flowing through the transistor M1. Due to no current flowing into the operational amplifier 502, the current IM1 is equal to the current Ii and therefore the current IM2 is also equal to the current Ii. Furthermore, since holes have better resistance to the “hot carrier” effect than electrons do, the current Io is equal to the current IM2 even though the PMOS transistor M9 located in the output current path may experience high VDS. Consequently, the input current Ii flowing through the input current path is equal to the output current Io flowing through the output current path. The current mismatch issue in the conventional current mirror circuit is eliminated.
The auxiliary circuit 606 is located in at least one of the input and output current path for improving a performance of the current mirror. The auxiliary circuit 606 includes a transistor M10 in the input current path and a transistor M11 in the output current path. The transistors M1, M2, M10 and M11 are coupled to constitute a cascode structure. The transistor M10 has a gate and a drain coupled together, and the transistor M11 has a gate coupled to the gate of the transistor M10.
The voltage at V3 equals to the voltage at V4 due to the cascode structure. Furthermore, as mentioned above, the voltages at V1 and V2 are the same, and both the currents IM1 and IM2 are equal to the current Ii. Since holes have better resistance to the “hot carrier” effect than electrons do, the current Io is equal to the current IM2 even though the PMOS transistor M9 located in the output current path may experience high VDS. Consequently, the input current Ii flowing through the input current path is equal to the output current Io flowing through the output current path. The current mismatch issue in the conventional current mirror circuit is eliminated.
According to the aforementioned description, one advantage of the present invention is that a P type transistor is used in the output current path and the bulk and the source of the P type transistor are connected together to achieve better resistance to the hot carrier effect.
According to the aforementioned description, yet another advantage of the present invention is that an operational amplifier is included to achieve current match between the input and output path.
As is understood by a person skilled in the art, the foregoing preferred embodiments of the present invention are strengths of the present invention rather than limiting of the present invention. It is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims, the scope of which should be accorded the broadest interpretation so as to encompass all such modifications and similar structure.
Number | Date | Country | Kind |
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96148492 | Dec 2007 | TW | national |